A telegraph pole toppling alarm preprocessing device and early warning disposal method
By designing a pre-processing device for alarming and preventing the tilting of utility poles, the device monitors the tilting status in real time and automatically takes protective measures, thus solving the safety hazards caused by the tilting or falling of utility poles, achieving timely early warning and protection, and reducing accidents.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- WUHAN HUAYUAN ELECTRIC POWER GRP CO LTD
- Filing Date
- 2023-06-15
- Publication Date
- 2026-05-19
AI Technical Summary
Leaning or falling power poles can cause power grid failures and safety hazards, and existing technologies lack effective early warning and protection measures.
Design a pre-processing device for alarming and preventing utility pole tilting, including a tilt detection module, a protective action module, an alarm module, and a controller. It can monitor the tilt status in real time, automatically take temporary protective measures, and release auxiliary support rods for temporary support.
It enables timely early warning and alarm for tilted utility poles, automatically takes protective measures, reduces secondary accidents, provides maintenance time, improves the accuracy of handling, and provides protection under normal conditions.
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Figure CN116959211B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of utility pole technology, specifically to a utility pole tilting alarm pre-processing device and early warning handling method. Background Technology
[0002] Utility poles are a common type of support facility for power grid lines. The height and diameter of the poles vary, and regardless of their size, there are verticality requirements during installation. It is undesirable for them to be tilted. Although a slight tilt will not affect the use of the utility pole, it is still a safety hazard.
[0003] In addition, factors such as geological subsidence, disasters, the tension and compression of cables, and collisions with external objects can also cause utility poles to tilt or even fall. If a utility pole tilts to a certain angle and is not detected and dealt with in time, it will fall completely, which will not only affect the normal power supply, but also cause damage to surrounding buildings, pedestrians and vehicles, and lead to secondary accidents. Summary of the Invention
[0004] The purpose of this invention is to address the problems existing in the prior art by providing a pre-processing device and early warning method for alarming and handling the falling of utility poles.
[0005] To achieve the above objectives, the technical solution adopted by the present invention is as follows:
[0006] A pre-processing device for alarming and preventing utility pole tilting includes a tilt detection module, a protective treatment module, an alarm module, and a controller mounted on the utility pole. The protective treatment module includes a connecting plate connected to the utility pole. The connecting plate is connected to an arc-shaped protective plate via several first buffers. The arc-shaped protective plate is concentrically arranged with the utility pole, and several second buffers are also provided between the arc-shaped protective plate and the utility pole. One or more auxiliary support rods are provided in the middle of the arc-shaped protective plate, parallel to the axis of the utility pole. The lower end of the auxiliary support rod is rotatably connected to the arc-shaped protective plate, and the upper end of the auxiliary support rod is normally closedly connected to the arc-shaped protective plate via a linkage switch. The tilt detection module is used to detect the tilt angle and tilt direction of the utility pole and is electrically connected to the controller. The alarm module is electrically connected to the controller and is used to send alarm information. The controller is also electrically connected to the linkage switch and controls the opening and closing of the linkage switch in stages.
[0007] This pole tilting alarm and pre-processing device can not only monitor the tilting status of the pole, provide early warning and alarm for the tilting status, and notify maintenance personnel to carry out maintenance, but also automatically take temporary protective measures when the tilting worsens, providing temporary support for the tilting pole to prevent it from falling and causing greater secondary accidents. It also provides maintenance personnel with time to rush to the scene, greatly reducing the adverse effects caused by the tilting of the pole.
[0008] The tilt detection module can detect the tilt angle of the utility pole to promptly identify any tilting conditions. For minor tilts, it can issue an early warning to notify maintenance personnel to straighten the pole. For severe tilts or worsening tilts, it can not only notify maintenance personnel for repairs but also trigger on-site temporary measures. The tilt detection module can also obtain the direction of the pole's tilt. Accurate determination of the tilt direction helps control the intervention of the protective measures module in that specific direction, resulting in higher accuracy in the response.
[0009] The protective treatment module is installed on the outer periphery of the utility pole. It not only serves as an on-site treatment mechanism in case of tilting, but also provides protection under normal conditions, preventing damage to the utility pole from external collisions in daily life. This also enhances the significance of the protective treatment module, enabling it to provide protection throughout its entire life cycle.
[0010] The connecting plate facilitates the independent disassembly and installation of the entire protective module, and can be replaced independently if the module is damaged. The first buffer can connect the arc-shaped protective plate and also form an elastic buffer together with the second buffer to absorb and disperse the energy of the collision and reduce the direct impact of foreign objects on the utility pole.
[0011] The auxiliary support rod is installed in the middle of the arc-shaped protective plate. It can be automatically released in an emergency when the pole tilts more severely. The released auxiliary support rod flips and falls, forming a temporary inclined support between the ground and the pole, preventing the pole from tilting and falling further, and providing sufficient time for maintenance personnel to arrive at the scene.
[0012] Furthermore, the protective and handling modules are arranged in at least four groups in a centrally symmetrical manner.
[0013] Furthermore, the outer periphery of the utility pole is provided with several mounting grooves, the connecting plate is engaged in the mounting grooves and connected by several screws, and the length and width dimensions of the connecting plate do not exceed the length and width dimensions of the arc-shaped protective plate.
[0014] Furthermore, the first buffer is an adaptive telescopic rod, and each set of the protection and treatment modules has two columns of the first buffer arranged vertically, with at least two first buffers arranged in each column.
[0015] Furthermore, the second buffer component consists of several buffer springs arranged in an array, with both ends of the buffer springs connected to the arc-shaped protective plate and the utility pole respectively via spring seats.
[0016] Both the first and second buffer components serve a connecting function and an elastic buffering and energy-absorbing function.
[0017] Furthermore, the arc-shaped protective plate has a through groove in the middle, and the auxiliary support rod is arranged in the through groove. In the connected state, the outer surface of the auxiliary support rod does not protrude from the through groove.
[0018] Under normal conditions, the auxiliary support rod is part of the arc-shaped protective plate and can work together to form a protective function, without protruding from the outer surface of the arc-shaped protective plate.
[0019] Furthermore, the linkage switch is an electromagnetic switch located on the inner side of the arc-shaped protective plate and the upper end of the auxiliary support rod. The electromagnetic switch is also provided with a pop-out mechanism, which uses a spring-push block compressed in the receiving hole to pop out the disconnected auxiliary support rod.
[0020] Furthermore, a pressure sensor or a strain gauge is embedded in the lower end of the auxiliary support rod. The pressure sensor or the strain gauge is also connected to the controller, which can detect the pressure at the end of the auxiliary support rod in real time and feed it back to the controller.
[0021] Furthermore, the utility pole has a horizontal mounting plate inside, on which the tilt detection module and the controller are arranged; the tilt detection module includes at least a tilt angle sensor and an acceleration sensor, the alarm module includes a local alarm module and a remote alarm module, the local alarm module is an alarm light installed on the utility pole, and the controller can be a PLC controller.
[0022] A pre-warning and handling method for a utility pole tilting alarm pre-processing device includes:
[0023] The tilt angle and tilt direction of the utility pole are acquired by the tilt detection module.
[0024] The tilt angle and tilt direction are fed back to the controller, which determines whether the tilt angle exceeds the tilt threshold. If it does not exceed the threshold, only a remote warning message is issued. If it exceeds the threshold, a field alarm is issued at the same time as the remote warning message, and the linkage switch is triggered to release the auxiliary support rod.
[0025] When a single auxiliary support rod is supporting the utility pole, if an increasing pressure is detected at the end of the auxiliary support rod, a linkage switch is triggered to release the adjacent auxiliary support rod.
[0026] This early warning and handling method first compares the tilt data monitored by the tilt detection module with a preset tilt threshold. If the tilt is determined to be minor, maintenance personnel are notified to straighten the pole without triggering the release of the auxiliary support rods to avoid waste. If the tilt is determined to be significant, an early warning is issued and the auxiliary support rods are released for temporary protective support. Secondly, this method can also release more auxiliary support rods as the tilt worsens, forming a stronger local reinforcement. By adopting this tiered early warning method, problematic utility poles can be repaired in a timely manner, and secondary damage can be avoided.
[0027] Compared with the prior art, the beneficial effects of the present invention are as follows: 1. This utility pole tilting alarm pre-processing device can not only monitor the tilting state of the utility pole, provide early warning and alarm for the tilting state, and notify maintenance personnel for maintenance, but also automatically take temporary protective measures when the tilting intensifies, providing temporary support for the tilted utility pole to prevent it from tilting and causing greater secondary accidents. It also provides maintenance personnel with time to rush to the scene, greatly reducing the adverse effects caused by the tilting of the utility pole; 2. The tilt detection module can also obtain the tilting direction of the utility pole. The accurate judgment of the tilting direction is conducive to controlling the intervention of the protective treatment module in the specific direction, making the treatment more accurate; 3. The protective treatment module is set on the outer periphery of the utility pole, which not only plays a role in on-site treatment due to tilting, but also plays a protective role under normal conditions; 4. The entire protective treatment module can be disassembled and installed independently, and can be replaced independently if any module is damaged; the first buffer can connect the arc-shaped protective plate and can also form an elastic buffering effect together with the second buffer to absorb and disperse the energy of the collision and reduce the direct impact of foreign objects on the utility pole. Attached Figure Description
[0028] Figure 1 This is a schematic diagram of a pre-processing device for alarming and preventing falling utility poles, as described in this invention, arranged on a utility pole.
[0029] Figure 2 This is a schematic cross-sectional view of the pre-processing device for alarming falling utility poles according to the present invention.
[0030] Figure 3 This is a partial structural diagram of the inner side of the arc-shaped protective plate of the present invention;
[0031] Figure 4 This is a partial cross-sectional structural diagram of the connection between the arc-shaped protective plate and the auxiliary support rod of the present invention;
[0032] Figure 5 This is a schematic diagram of the structure of the auxiliary support rod forming an oblique support after being flipped over according to the present invention;
[0033] Figure 6 This is a schematic diagram of another arrangement structure of the pole tilting alarm pre-processing device of the present invention;
[0034] In the diagram: 1. Utility pole; 2. Curved protective plate; 3. Auxiliary support rod; 4. Connecting plate; 5. First buffer component; 6. Second buffer component; 7. Interlocking switch; 8. Connecting shaft; 9. Through groove; 10. Spring thrust block; 11. Stress strain gauge. Detailed Implementation
[0035] The technical solution of the present invention will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are merely some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0036] In the description of this invention, it should be noted that the terms "middle," "upper," "lower," "left," "right," "inner," and "outer," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are used only for the convenience of describing this invention and for simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention. Furthermore, the terms "first," "second," etc., are used for descriptive purposes only and should not be construed as indicating or implying relative importance.
[0037] like Figures 1-5 As shown, a pre-processing device for alarming a fallen utility pole includes a tilt detection module, a protective treatment module, an alarm module, and a controller mounted on the utility pole 1. The protective treatment module includes a connecting plate 4 connected to the utility pole 1. The connecting plate 4 is connected to an arc-shaped protective plate 2 via several first buffers 5. The arc-shaped protective plate 2 is arranged concentrically with the utility pole 1. Several second buffers 6 are also provided between the arc-shaped protective plate 2 and the utility pole 1. One or more auxiliary support rods 3 are provided in the middle of the arc-shaped protective plate 2, parallel to the axis of the utility pole 1. The lower end of the auxiliary support rod 3 is rotatably connected to the arc-shaped protective plate 2, and the upper end of the auxiliary support rod 3 is normally closed and connected to the arc-shaped protective plate 2 via a linkage switch 7. The tilt detection module is used to detect the tilt angle and tilt direction of the utility pole 1 and is electrically connected to the controller. The alarm module is electrically connected to the controller and is used to send alarm information. The controller is also electrically connected to the linkage switch 7 and controls the opening and closing of the linkage switch 7 in stages.
[0038] This pole tilting alarm pre-processing device can not only monitor the tilting state of pole 1, provide early warning and alarm for the tilting state, and notify maintenance personnel to carry out maintenance, but also automatically take temporary protective measures when the tilting intensifies, providing temporary support for the tilting pole to prevent it from tilting and causing greater secondary accidents. It also provides maintenance personnel with time to rush to the scene, greatly reducing the adverse effects caused by the tilting of the pole.
[0039] The tilt detection module can detect the tilt angle of the utility pole to promptly identify any tilting conditions. For minor tilts, it can issue an early warning to notify maintenance personnel to straighten the pole. For severe tilts or worsening tilts, it can not only notify maintenance personnel for repairs but also trigger on-site temporary measures. The tilt detection module can also obtain the direction of the pole's tilt. Accurate determination of the tilt direction helps control the intervention of the protective measures module in that specific direction, resulting in higher accuracy in the response.
[0040] The protective treatment module is installed on the outer periphery of the utility pole 1. It not only serves as an on-site treatment mechanism in case of tilting, but also provides protection under normal conditions, preventing damage to the utility pole from external collisions in daily life. This also enhances the significance of the protective treatment module, enabling it to provide protection throughout its entire life cycle.
[0041] The connection plate 4 facilitates the independent disassembly and installation of the entire protective module, and can be replaced independently if the module is damaged; the first buffer 5 can connect the arc-shaped protective plate 2 and also form an elastic buffer together with the second buffer 6 to absorb and disperse the energy of the collision and reduce the direct impact of foreign objects on the utility pole.
[0042] The auxiliary support rod 3 is installed in the middle of the arc-shaped protective plate 2. It can be automatically released in an emergency when the tilt of the utility pole 1 increases. The released auxiliary support rod 3 flips and falls, which can form a temporary inclined support between the ground and the utility pole 1, preventing the utility pole from tilting and falling further, and providing sufficient time for maintenance personnel to arrive at the scene.
[0043] The auxiliary support rod 3 has a rotating connection point at its lower part and is connected to the arc-shaped protective plate 2 at its upper part via the linkage switch, so that it can be flipped downwards when the connection is disconnected to form support.
[0044] Furthermore, the protective measures module consists of four groups arranged symmetrically at the center. The arc length of the arc-shaped protective plate 2 in each group of the protective measures module is close to 1 / 4 of a circle, which can basically form circumferential protection around the outer periphery of the utility pole 1. Under this structure, each arc-shaped protective plate 2 will be provided with multiple auxiliary support rods 3. These auxiliary support rods 3 can also be released to provide support in their respective positions after the tilt direction is determined.
[0045] In other embodiments, the protective measures module can be configured in dozens or even tens of units, depending on the outer diameter of the utility pole. Figure 6 As shown, the arc-shaped protective plates 2 arranged in a series of small intervals can also form protection around the utility pole. Under this structure, each arc-shaped protective plate 2 can be equipped with only one auxiliary support rod 3. One auxiliary support rod 3 can basically be responsible for the orientation at a certain angle, so the independence of this arrangement is better.
[0046] Furthermore, the outer periphery of the utility pole 1 is provided with several mounting grooves, the connecting plate 4 is engaged in the mounting grooves and connected by several screws, and the length and width dimensions of the connecting plate 4 do not exceed the length and width dimensions of the arc-shaped protective plate 2.
[0047] The mounting slot is designed to accommodate and connect the connecting plate 4. All protective modules outside the connecting plate 4 provide buffering and protection. The connecting plate 4 can be a single vertical plate or multiple spaced-apart plates. Its primary purpose is to connect the protective modules and allow for independent disassembly. Both the connecting plate and the curved protective plate can be made of lightweight materials, with the curved protective plate being a sheet material possessing a certain degree of plasticity and toughness.
[0048] Furthermore, the first buffer 5 is an adaptive telescopic rod, such as a hydraulic rod, a starting rod, a spring rod, etc.; each group of the protection and treatment modules is provided with two columns of the first buffer 5 in the vertical direction, and each column is provided with at least two first buffer 5.
[0049] Furthermore, the second buffer 6 consists of several buffer springs arranged in an array, with both ends of the buffer springs connected to the arc-shaped protective plate 2 and the utility pole 1 respectively via spring seats.
[0050] Both the first buffer 5 and the second buffer 6 serve a connecting function and an elastic buffering and energy-absorbing function. The first buffer has a higher connection strength than the second buffer, while the second buffer has better flexibility.
[0051] Furthermore, the arc-shaped protective plate 2 has a through groove 9 in the middle, and the auxiliary support rod 3 is arranged in the through groove 9. In the connected state, the outer surface of the auxiliary support rod 3 does not protrude from the through groove 9.
[0052] Under normal conditions, the auxiliary support rod 3 is connected and fixed to the arc-shaped protective plate 2, and is part of the arc-shaped protective plate 2. It can form a protective function together with the arc-shaped protective plate 2, and it will not protrude from the outer surface of the arc-shaped protective plate 2. The outer surface of the arc-shaped protective plate 2 can also be provided with a reflective coating or reflective warning stickers to serve as a warning, reminder and indication.
[0053] A connecting shaft 8 is provided below the through groove 9, and the lower part of the auxiliary support rod 3 is rotatably connected to the connecting shaft 8. The distance from the lower rotation point of the auxiliary support rod 3 to its end is less than or equal to the distance between the arc-shaped protective plate 2 and the outer periphery of the utility pole 1 in the normal state. This arrangement allows the lower end of the auxiliary support rod 3 to flip upwards from the inside after it pops out. After flipping, the tilt of the utility pole will press against the first and second buffer members on that side, reducing the distance between the arc-shaped protective plate and the utility pole until the outer periphery of the utility pole 1 abuts against the flipped end of the auxiliary support rod 3 to form support. If the distance from the lower rotation point of the auxiliary support rod 3 to its end is greater than the distance between the arc-shaped protective plate 2 and the outer periphery of the utility pole 1 in the normal state, then a local clearance space needs to be provided at the lower position of the auxiliary support rod on the outer periphery of the utility pole 1 so that the lower end of the auxiliary support rod can flip upwards from the inside.
[0054] Furthermore, the linkage switch 7 is an electromagnetic switch located inside the arc-shaped protective plate 2 and at the upper end of the auxiliary support rod 3, or it can be other electrically triggered switches; a pop-out mechanism is also provided below or on both sides of the electromagnetic switch, and the pop-out mechanism uses the spring push block 10 compressed in the receiving hole to pop out the disconnected auxiliary support rod 3.
[0055] Upon receiving a disconnection command, the linkage switch 7 can quickly release the auxiliary support rod 3. Since this side is already tilted, the auxiliary support rod 3 will usually automatically flip downwards under the action of gravity, with its upper end flipping directly to the ground. To avoid situations where the auxiliary support rod 3 cannot fall smoothly or flips too slowly, the ejection mechanism can be used to quickly eject the auxiliary support rod 3. The principle is to use a spring-loaded push block compressed in the receiving hole to eject the upper end of the auxiliary support rod outwards.
[0056] Furthermore, a stress strain gauge 11 is embedded in the lower end of the auxiliary support rod 3, and the stress strain gauge 11 is also connected to the controller.
[0057] When the utility pole 1 tilts, the lower end of the auxiliary support rod 3 flips upward to abut against the utility pole 1. The stress strain gauge 11 can obtain the stress condition at the end. Since the auxiliary support rod 3 can temporarily support the utility pole, the tilt angle of the utility pole 1 will not continue to increase. However, the tilt of the utility pole 1 may be aggravated. If it is detected that the pressure on the end is continuously increasing, a single auxiliary support rod 3 may not be enough to support the utility pole. In this case, a command can be further triggered to release more auxiliary support rods 3 on that side for support, so as to avoid the tilt of the utility pole from aggravating.
[0058] Furthermore, the utility pole 1 has a horizontal mounting plate inside, on which the tilt detection module and the controller are arranged; the tilt detection module includes at least a tilt sensor and an acceleration sensor, and the alarm module includes a local alarm module and a remote alarm module. The local alarm module is an alarm light installed on the utility pole, which can provide sound and light alerts on site. The remote alarm module can be a wireless signal receiving and transmitting module, which can be connected to a terminal of maintenance personnel or the control room.
[0059] In other embodiments, the tilt detection module and the controller can be mounted on the wall of the utility pole. The mounting method can be selected based on the type and size of the utility pole, prioritizing ease of installation, maintenance, and safety. For metal utility poles, these modules can be mounted on an internal horizontal mounting plate, with a normally closed inspection port located on the pole body near the horizontal mounting plate.
[0060] The combined use of the tilt sensor and the acceleration sensor can accurately determine the tilt angle and direction.
[0061] In some implementations, the acceleration sensor can collect the acceleration of the utility pole and determine whether it is stationary based on the acceleration. When it is determined to be stationary, it is easier to accurately obtain the current tilt angle. For example, by comparing the collected horizontal and vertical accelerations of the utility pole with the previously collected acceleration, the acceleration difference is obtained. If the acceleration difference in both directions is less than the acceleration threshold, it is considered to be approaching a static state.
[0062] The tilt acquisition module can generate a unique identification code while acquiring the tilt angle and tilt direction. When sending alarm information, the identification code can also be sent to maintenance personnel along with the alarm information. This is beneficial for locating the position of the tilted utility pole.
[0063] A pre-warning and handling method for a utility pole tilting alarm pre-processing device includes:
[0064] The tilt angle and tilt direction of the utility pole are acquired by the tilt detection module.
[0065] The tilt angle and tilt direction are fed back to the controller, which determines whether the tilt angle exceeds the tilt threshold. If it does not exceed the threshold, only a remote warning message is issued. If it exceeds the threshold, a field alarm is issued at the same time as the remote warning message, and the linkage switch is triggered to release the auxiliary support rod.
[0066] When a single auxiliary support rod is supporting the utility pole, if an increasing pressure is detected at the end of the auxiliary support rod, a linkage switch is triggered to release the adjacent auxiliary support rod.
[0067] This early warning and handling method first uses the tilt detection module to monitor the tilt data and compares it with a preset tilt threshold. If the tilt is determined to be minor, maintenance personnel can be notified in time to straighten the tilt without triggering the release of the auxiliary support rod to avoid waste. If the tilt is determined to be significant, an early warning will be issued and the auxiliary support rod will be released for temporary protective support.
[0068] The selection of the tilt threshold needs to take into account the material and height of the utility pole and the situation of the cables erected above it. It can be set to multiple levels, such as 0-3°, 3-5°, 5-10°, etc.
[0069] Secondly, this method can also release more auxiliary support rods as the tilt worsens, forming a stronger local reinforcement. By adopting this graded early warning method, we can not only repair the problematic utility poles in a timely manner, but also avoid secondary damage and reduce waste.
[0070] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A pre-warning and handling method for a utility pole tilting alarm pre-processing device, characterized in that, The device includes a tilt detection module, a protective action module, an alarm module, and a controller, all mounted on a utility pole. The protective action module includes a connecting plate connected to the utility pole. The connecting plate is connected to an arc-shaped protective plate via several first buffer components. The arc-shaped protective plate is concentrically arranged with the utility pole, and several second buffer components are also provided between the arc-shaped protective plate and the utility pole. One or more auxiliary support rods are provided in the middle of the arc-shaped protective plate, parallel to the axis of the utility pole. The lower end of each auxiliary support rod is rotatably connected to the arc-shaped protective plate, and the upper end of each auxiliary support rod is normally closed and connected to the arc-shaped protective plate via a normally closed interlocking switch. The tilt detection module detects the tilt angle and direction of the utility pole and is electrically connected to the controller. The alarm module is electrically connected to the controller and sends alarm information. The controller is also electrically connected to the interlocking switch and controls its opening and closing in stages. Early warning and response methods include: The tilt angle and tilt direction of the utility pole are acquired by the tilt detection module. The tilt angle and tilt direction are fed back to the controller, which determines whether the tilt angle exceeds the tilt threshold. If it does not exceed the threshold, only a remote warning message is issued. If it exceeds the threshold, a field alarm is issued at the same time as the remote warning message, and the linkage switch is triggered to release the auxiliary support rod. When a single auxiliary support rod is supporting the utility pole, if an increasing pressure is detected at the end of the auxiliary support rod, a linkage switch is triggered to release the adjacent auxiliary support rod.
2. The early warning and handling method of the pre-processing device for the pole tilting alarm according to claim 1, characterized in that, The protective and handling modules are arranged in at least four groups in a centrally symmetrical manner.
3. The early warning and handling method of the pre-processing device for the pole tilting alarm according to claim 1, characterized in that, The outer periphery of the utility pole is provided with several mounting grooves, the connecting plate is engaged in the mounting grooves and connected by several screws, and the length and width dimensions of the connecting plate do not exceed the length and width dimensions of the arc-shaped protective plate.
4. The early warning and handling method of the pre-processing device for the pole tilting alarm according to claim 1, characterized in that, The first buffer is an adaptive telescopic rod. Each set of the protection and treatment modules has two columns of the first buffer in the vertical direction, and each column has at least two first buffers.
5. The early warning and handling method of the pre-processing device for the pole tilting alarm according to claim 1, characterized in that, The second buffer component consists of several buffer springs arranged in an array, with both ends of the buffer springs connected to the arc-shaped protective plate and the utility pole respectively via spring seats.
6. The early warning and handling method of the pre-processing device for the pole tilting alarm according to claim 1, characterized in that, The arc-shaped protective plate has a through groove in the middle, and the auxiliary support rod is arranged in the through groove. In the connected state, the outer surface of the auxiliary support rod does not protrude from the through groove.
7. The early warning and handling method of the pre-processing device for the pole tilting alarm according to claim 1, characterized in that, The linkage switch is an electromagnetic switch located inside the arc-shaped protective plate and at the upper end of the auxiliary support rod. The electromagnetic switch is also provided with a pop-out mechanism, which uses a spring-loaded push block compressed in the receiving hole to pop out the disconnected auxiliary support rod.
8. The early warning and handling method of the pre-processing device for the pole tilting alarm according to claim 1, characterized in that, The lower end of the auxiliary support rod is also embedded with a pressure sensor or a stress strain gauge, which is also connected to the controller.
9. The early warning and handling method of the pre-processing device for the pole tilting alarm according to claim 1, characterized in that, The utility pole has a horizontal mounting plate inside, on which the tilt detection module and the controller are arranged; the tilt detection module includes at least a tilt angle sensor and an acceleration sensor, and the alarm module includes a local alarm module and a remote alarm module, wherein the local alarm module is an alarm light installed on the utility pole.